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On folding morphogenesis, a mechanical problem

机译:折叠形态发生,机械问题

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摘要

Tissue folding is a fundamental process that sculpts a simple flat epithelium into a complex three-dimensional organ structure. Whether it is the folding of the brain, or the looping of the gut, it has become clear that to generate an invagination or a fold of any form, mechanical asymmetries must exist in the epithelium. These mechanical asymmetries can be generated locally, involving just the invaginating cells and their immediate neighbours, or on a more global tissue-wide scale. Here, we review the different mechanical mechanisms that epithelia have adopted to generate folds, and how the use of precisely defined mathematical models has helped decipher which mechanisms are the key driving forces in different epithelia. This article is part of a discussion meeting issue 'Contemporary morphogenesis'.
机译:组织折叠是一个基本过程,使一个简单的平坦上皮雕刻成复杂的三维器官结构。 无论是颅脑的折叠,还是肠道的循环,都清楚地明确表示产生任何形式的内皮或折叠,在上皮内必须存在机械不对称。 这些机械不对称可以在本地生成,涉及invaginated细胞及其直接邻居,或者在更全局的组织范围内。 在这里,我们审查了上皮所采用折叠的不同机械机制,以及如何使用精确定义的数学模型有助于破译哪种机制是不同上皮中的关键驱动力。 本文是讨论会议问题“当代形态发生”的一部分。

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